Double-working-state ring-shaped component post-processing machine
By designing a dual-working-state post-processing machine for ring-shaped components, and utilizing a rotating motor and various processing parts, highly efficient and automated processing of the inner and outer walls of the ring-shaped components has been achieved. This solves the problem of low efficiency in existing technologies and improves production efficiency and product quality.
Patent Information
- Application Number
- CN202520600500.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-01
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-04-01
AI Technical Summary
Existing ring-shaped component processing machines can only automate the processing of the inner wall and end face, failing to meet the requirements for high-efficiency production.
Design a dual-working-state post-processing machine for ring-shaped components, including a support base, a rotating functional part, and upper and middle processing components. By driving a rotating disk with a rotating motor, combined with clamping parts and various processing components, efficient and automated processing of the inner and outer walls of the ring-shaped components can be achieved.
It enables highly efficient automated processing of the inner and outer walls of ring-shaped components, improving production efficiency, reducing the need for manual operation, and lowering the risk of positional deviation.
Smart Images

Figure CN223947338U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to mechanical processing device field, especially a kind of double working state circle component post-processing machine. BACKGROUND
[0002] With the continuous improvement of social progress and living standards, people's pursuit of life quality is also increasing, which is particularly prominent in the choice of lamps. Various chandelier designs emerge in an endless stream on the market, which not only meets the basic lighting needs, but also caters to the pursuit of modern people for life aesthetics with unique design aesthetics. Among many lamp designs, the circular appearance has become a very popular design element. Whether it is the basic structure or decorative elements of the lamp, the design of the circular lamp cannot be separated from the application of the circle component. These circle components usually involve the manufacture of circle basic structure and the necessary drilling and tapping process during processing.
[0003] However, the current drilling and tapping of circle components still mainly relies on traditional drilling platforms. This processing method not only has low efficiency, but also usually requires three to four workers to cooperate to complete the drilling and tapping of a circle component. Manual operation not only consumes time and effort, but also is prone to position deviation during processing, affecting the quality of the final product. In the prior application, a structure of an automatic drilling and tapping machine has been proposed, which can automatically complete the drilling and tapping process; but its design can only realize the processing of the inner wall and end face of the circle component, and has not yet fully met the requirements of automation and high efficiency. UTILITY MODEL CONTENT
[0004] The main purpose of the utility model is to provide a double-working-state circle component post-processing machine, which aims to solve the problem that the existing circle structure processing machine can only realize the processing of the inner wall and end face of the circle component, and has not yet fully met the requirements of automation and high efficiency.
[0005] To achieve the above purpose, the utility model provides a double-working-state circle component post-processing machine, which comprises:
[0006] A support base horizontally supports a workbench, and a window is provided in the middle of the length direction of the workbench;
[0007] A rotating function part is installed on the support base and comprises a rotating motor and a clamping piece. The rotating motor is arranged below the workbench, and the output end of the rotating motor is connected with a rotating disc corresponding to the window. The clamping piece is arranged corresponding to the rotating disc.
[0008] An upper processing assembly comprises an upper driving table arranged above the workbench and corresponding to the outer peripheral wall of the rotating disc in the layout direction, and an upper processing part is drivingly arranged on the upper driving table in the width direction of the workbench.
[0009] The middle processing assembly comprises a middle driving table arranged in the window and arranged vertically, and the middle driving table drives the middle processing part arranged in the height direction;
[0010] The controller controls the operation of the rotating motor, the upper processing assembly and the middle processing assembly.
[0011] The upper processing part and the middle processing part are arranged in the telescopic direction of the rotating disc.
[0012] Further, the rotating motor is adjustable at the fixed position in the length direction of the support base.
[0013] Further, a clamping driving part is arranged corresponding to the clamping part, and the clamping driving part is used to drive the clamping part away from and close to the rotating disc, and the clamping driving part is arranged below the workbench.
[0014] Further, the clamping driving part is a cylinder driving part.
[0015] Further, the clamping part comprises two rollers arranged in the width direction of the workbench.
[0016] Further, the upper processing part comprises an upper punching part and an upper tapping part which can independently move in the vertical direction; and the middle processing part comprises a middle punching part and a middle tapping part which can independently move in the horizontal direction.
[0017] Further, the upper processing part comprises an upper punching part and an upper tapping part which can move in the vertical direction; and the middle processing part comprises a middle punching part and a middle tapping part which can move in the horizontal direction.
[0018] Further, the middle driving table is arranged below the workbench.
[0019] Further, the outer peripheral wall of the rotating disc is a polymer anti-skid layer.
[0020] Further, the double-working-state ring-shaped component post-processing machine further comprises a lower processing assembly, and the lower processing assembly comprises a lower driving table arranged corresponding to the outer peripheral wall of the rotating disc and arranged below the workbench, and the lower driving table drives a lower processing part arranged in the width direction of the workbench.
[0021] The double-working-state ring-shaped component post-processing machine provided by the utility model, through the workbench supporting the ring-shaped component, and the window on it provides working basis for the subsequent middle processing assembly; the window is arranged at the middle of the length direction of the workbench, so that the ring-shaped component can be installed at the front or rear part of the rotating disc in the length direction of the workbench, the inner wall and the outer wall of the ring-shaped component can be processed respectively, the rotation of the ring-shaped component is limited and driven through the rotating function part, and the double-working-state ring-shaped component post-processing machine has the advantages of simplicity and high efficiency; the processing positions of the upper processing assembly and the middle processing assembly are very close to the rotating disc, the ring-shaped component can be processed efficiently, and the rotating disc is more stable as the supporting basis. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 Figure 1 is a schematic diagram of a first view (outside processing state) of a double-working-state ring-shaped component post-processing machine according to an embodiment of the utility model;
[0023] Figure 2 Figure 2 is a partial enlargement of Figure 1; Figure 1
[0024] Figure 3 Figure 3 is a schematic diagram of a second view of a double-working-state ring-shaped component post-processing machine according to an embodiment of the utility model;
[0025] Figure 4 Figure 4 is a partial enlargement (outside processing state) of Figure 3; Figure 3
[0026] Figure 5 Figure 5 is a schematic diagram of a double-working-state ring-shaped component post-processing machine according to an embodiment of the utility model (inside processing state).
[0027] The implementation, functional features and advantages of the utility model will be further described with reference to the embodiments and the accompanying drawings. DETAILED DESCRIPTION
[0028] It should be understood that the specific embodiments described herein are merely intended to explain the utility model, and are not intended to limit the utility model.
[0029] It is to be understood that the singular forms "a," "an," and "the" include plural referents unless the context clearly dictates otherwise. It is further understood that the terms "comprise" and "comprising," when used in this specification, specify the presence of stated features, integers, steps, operations, elements, units, modules, and / or components, but do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, units, modules, components, and / or groups thereof. It is further understood that when an element is referred to as being "connected" or "coupled" to another element, it can be directly connected or coupled to the other element or intervening elements can be present. Furthermore, "connected" or "coupled" as used herein can include wirelessly connected or wirelessly coupled. As used herein, the term "and / or" includes any and all combinations of one or more of the associated listed items.
[0030] It is to be understood that the singular forms "a," "an," and "the" include plural referents unless the context clearly dictates otherwise. It is further understood that the terms "comprise" and "comprising," when used in this specification, specify the presence of stated features, integers, steps, operations, elements, units, modules, and / or components, but do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, units, modules, components, and / or groups thereof. It is further understood that when an element is referred to as being "connected" or "coupled" to another element, it can be directly connected or coupled to the other element or intervening elements can be present. Furthermore, "connected" or "coupled" as used herein can include wirelessly connected or wirelessly coupled. As used herein, the term "and / or" includes any and all combinations of one or more of the associated listed items.
[0031] Reference Figures 1 to 5 In an embodiment of the present application, a double-working-state ring-shaped component post-processing machine comprises:
[0032] A support base 100 horizontally supports a workbench 110, and a window 111 is formed in the middle of the length direction of the workbench 110;
[0033] A rotating function part 200 is installed on the support base 100 and comprises a rotating motor 210 and a clamping part 220. The rotating motor 210 is arranged below the workbench 110. The output end of the rotating motor 210 is connected with a rotating disc 230 corresponding to the window 111. The clamping part 220 is arranged corresponding to the rotating disc 230;
[0034] An upper processing assembly 300 comprises an upper driving table 310 arranged corresponding to the outer circumferential wall of the rotating disc 230 and above the workbench 110. The upper driving table 310 is arranged with an upper processing part 320 in the width direction of the workbench 110;
[0035] A middle processing assembly 400 comprises a middle driving table 410 arranged in the window 111 and arranged in the vertical direction. The middle driving table 410 is arranged with a middle processing part 420 in the height direction;
[0036] The controller 500 controls the operation of the rotating motor 210, the upper machining assembly 300 and the middle machining assembly 400.
[0037] The upper machining part 320 and the middle machining part 420 are arranged in the same direction of the telescopic direction of the rotating disc 230.
[0038] In the prior art, the structure of the automatic punching and tapping machine can automatically complete the punching and tapping process; however, the design can only realize the machining of the inner wall and the end face of the ring-shaped member, and the automatic and high-efficiency production requirements have not been fully achieved.
[0039] In the utility model, the support base 100 horizontally supports the workbench 110. The support base 100 can be formed into a support by angle steel or tubular steel and the like profiled material, thereby supporting the workbench 110. The middle part of the workbench 110 in the length direction is penetrated by a window 111 in thickness. The window 111 provides a basis for the installation and machining process of the subsequent member. The window 111 can have various shapes, and the workbench 110 can support the ring-shaped member 010.
[0040] The rotating function part 200 is installed on the support base 100 and comprises a rotating motor 210 and a clamping piece 220. The rotating motor 210 is arranged below the workbench 110, thereby forming an avoiding space. The output end of the rotating motor 210 is connected with a rotating disc 230 corresponding to the window 111. The clamping piece 220 is arranged corresponding to the rotating disc 230. The clamping piece 220 clamps the ring-shaped component 010 together with the rotating disc 230, and the specific shape of the clamping piece 220 can be various, and the clamping piece 220 is specifically limited to clamp the ring-shaped component 010; and the clamping piece 220 can be even arranged to be drivable, thereby completing the clamping action. The work of the rotating motor 210 drives the rotating disc 230 to rotate. In the process of use, corresponding to the ring-shaped component 010 of different sizes, the rotating disc 230 corresponding to the size can be selected. The work control of the rotating motor 210 is always limited in the form of angle, for example, it is required to process once in the circumferential direction of the ring-shaped component 010 at an interval of 90 degrees, and then the model of the rotating disc 230 is replaced, and the work of the rotating motor 210 does not need to be adjusted (that is, the ratio between the rotation angle of the output end of the rotating motor 210 and the rotation of the ring-shaped component 010 can be fixed). The position of the rotating motor 210 in the length direction of the support base 100 is adjustable, that is, the position of the rotating disc 230 can also be moved in the length direction of the support base 100, thereby the contact position between the rotating disc 230 and the ring-shaped component 010 is always unchanged. In the process of use, the driving conversion of the rotating motor 210 is eliminated, and the change of the ring-shaped component 010 is adapted through the rotating disc 230. The window 111 is arranged in the middle of the length direction of the workbench 110, thereby in the length direction of the workbench 110, and the rotating motor 210 is arranged below the workbench 110, the ring-shaped component 010 can be installed in the front or rear of the rotating disc 230.
[0041] The upper machining assembly 300 comprises an upper driving table 310 arranged corresponding to the outer circumferential wall of the rotating disc 230 in the layout direction and arranged above the workbench 110, and the upper machining assembly 300 is driven to be arranged with an upper machining part 320 in the width direction of the workbench 110. The middle machining assembly 400 comprises a middle driving table 410 arranged in the window 111 and arranged in the vertical direction, and the middle driving table 410 is driven to be arranged with a middle machining part 420. The controller 500 controls the work of the rotating motor 210, the upper machining assembly 300 and the middle machining assembly 400. The extension directions of the upper machining part 320 and the middle machining part 420 are both directed to the rotating disc 230.
[0042] The upper machining assembly 300 and the middle machining assembly can efficiently machine the ring-shaped member 010. The operating principles of the upper machining assembly 300 and the middle machining assembly can be completely consistent or slightly different, and both are corresponding to the outer peripheral wall of the rotating disc 230, and the biggest difference is the setting position. Taking the upper machining assembly 300 as an example, the upper machining assembly 300 includes an upper driving table 310 arranged corresponding to the outer peripheral wall of the rotating disc 230 and arranged above the workbench 110. The upper driving table 310 can be a screw drive or a cylinder drive, and the specific driving mode is subject to the driving of the upper machining part 320 in the width direction of the workbench 110. The extension direction of the upper machining part 320 is directed to the rotating disc 230. For example, the upper machining part 320 includes an upper punching part for completing the punching operation and an upper tapping part for completing the tapping operation. The upper punching part includes an upper punching motor and a first upper extension driving member, and the work of the upper punching motor completes the punching, and the work of the first upper extension driving member completes the extension action, and the driving mode of the first upper extension driving member is preferably cylinder driving. The upper tapping part includes an upper tapping motor and a second upper extension driving member, and the work of the upper tapping motor completes the tapping, and the work of the second upper extension driving member completes the extension action, and the driving mode of the second upper extension driving member is preferably cylinder driving. The work of the upper driving table 310 adjusts the position of the upper punching part and the upper tapping part.
[0043] The machining positions of the upper machining assembly 300 and the middle machining assembly are very close to the rotating disc 230, so the rotating disc 230 as the supporting basis is more stable, because it is not easy to produce an adverse lever effect. The controller 500 can control the rotating motor 210, the upper machining assembly 300 and the middle machining assembly in a programmatic or sensory manner, for example, through a PLC type controller 500, the working mode is pre-set, and the working mode can be adjusted and set through the controller 500.
[0044] During the work, the operator inputs the position to be drilled and tapped on the ring-shaped member 010 into the control panel of the controller 500, and can store it for next time. According to whether it is the outer wall or the inner wall, the installation position of the ring-shaped member 010 between the clamping member 220 and the rotating disc 230 is selected. The controller 500 controls the work of the rotating motor 210, the upper machining assembly 300 and the middle machining assembly, until the holes and teeth of the entire ring-shaped member 010 are completed, and returns to the work origin, waiting for the next start. During the specific punching and tapping process, the upper machining assembly 300 and the middle machining assembly can work together or sequentially according to the specific situation.
[0045] In summary, the workbench 110 supports the ring-shaped component 010, and the window 111 provides a working basis for subsequent middle processing assemblies; the window 111 is arranged at the middle of the length direction of the workbench 110, so that the ring-shaped component 010 can be installed at the front or rear of the rotating disc 230 in the length direction of the workbench 110, and the inner wall and the outer wall of the ring-shaped component 010 can be processed respectively, the rotation of the ring-shaped component 010 is limited and driven by the rotating function part 200, which has the advantages of simplicity and efficiency; the processing positions of the upper processing assembly 300 and the middle processing assembly are very close to the rotating disc 230, so that the ring-shaped component 010 can be efficiently processed, and the rotating disc 230 as a support basis is more stable.
[0046] In one embodiment, the rotating motor 210 is adjustable at a fixed position in the length direction of the support base 100.
[0047] In this embodiment, since the overall positions of the upper processing assembly 300 and the middle processing assembly 400 are not adjustable, the fine adjustment of the processing position can be realized by adjusting the position of the rotating motor 210.
[0048] Referring to Figures 1 to 4 In one embodiment, a clamping driving part 240 corresponding to the clamping part 220 is arranged, which is used to drive the clamping part 220 away from and close to the rotating disc 230, wherein the clamping driving part 240 is arranged below the workbench 110.
[0049] In this embodiment, the clamping part 220 is arranged to be movable to provide superior clamping effect, and can adapt to clamping ring-shaped components 010 with different wall thicknesses. The power of the clamping driving part 240 can be pneumatic drive, hydraulic drive, motor drive, etc. The driving distance adjustment of the clamping driving part 240 can be program setting or sensor setting, and the specific clamping action is completed.
[0050] In one embodiment, the clamping driving part 240 is a pneumatic cylinder.
[0051] In this embodiment, considering that most workshops are provided with a compressed air circuit, it is convenient to drive in a pneumatic manner.
[0052] Referring to Figures 1 to 2 In one embodiment, the clamping part 220 includes two rollers arranged at intervals in the width direction of the workbench 110.
[0053] In the embodiment, a relatively simple structure of the clamping member 220 is provided. The clamping member 220 is used to clamp the ring-shaped member 010 with the rotating disc 230, while limiting the rotation of the ring-shaped member 010 as little as possible. The two rollers can form a triangle with the rotating disc 230 in the plane of the workbench 110, so that the ring-shaped member 010 is fixed stably, and the rolling characteristics of the rollers can reduce the friction.
[0054] In one embodiment, the upper machining part 320 includes an upper punching part and an upper tapping part, both of which can move independently in the vertical direction; and the middle machining part includes a middle punching part and a middle tapping part, both of which can move independently in the horizontal direction.
[0055] In the embodiment, the number of the upper punching part and the upper tapping part in the upper machining part 320 is not limited, for example, both of them can be two, and each of them is provided with an independent driving structure (such as a cylinder or a linear motor).
[0056] In one embodiment, the upper machining part 320 includes an upper punching part and an upper tapping part, both of which can move independently in the vertical direction; and the middle machining part includes a middle punching part and a middle tapping part, both of which can move independently in the horizontal direction.
[0057] In the embodiment, the number of the upper punching part and the upper tapping part in the upper machining part 320 is not limited, for example, both of them can be two, and each of them is provided with an independent driving structure (such as a cylinder or a linear motor).
[0058] In one embodiment, the middle driving table 410 is arranged below the workbench 110.
[0059] In the embodiment, the middle driving table 410 is arranged below, so that the working space above the workbench 110 is larger, which is convenient for the user to place and take the workpiece, and also facilitates the observation of the specific machining state.
[0060] In one embodiment, the outer peripheral wall of the rotating disc 230 is a polymer anti-skid layer.
[0061] In the embodiment, the outer circumferential wall of the rotating disc 230 is provided with a polymer anti-skid layer, such as various types of rubber or plastic, so as to increase the friction between the rotating disc 230 and the ring-shaped member 010. During driving of the ring-shaped member 010, the possibility of accidental slipping is reduced. The material of the polymer anti-skid layer can be selected according to the requirements, and a corresponding anti-skid pattern structure can be provided.
[0062] In one embodiment, the double-working-state ring-shaped member post-processing machine further comprises a lower processing assembly, the lower processing assembly comprising a lower driving table arranged below the workbench 110 and corresponding to the outer circumferential wall of the rotating disc 230, the lower driving table driving a lower processing portion in the width direction of the workbench 110;
[0063] In the embodiment, the structure of the lower processing assembly is similar to that of the upper processing assembly 300. With the introduction of the lower processing assembly, the upper surface and the lower surface can be processed without turning over the ring-shaped member 010.
[0064] In summary, the double-working-state ring-shaped member post-processing machine provided by the utility model supports the ring-shaped member 010 by the workbench 110, and the window 111 thereon provides a working basis for the subsequent middle processing assembly. The window 111 is arranged at the middle of the length direction of the workbench 110, so that the ring-shaped member 010 can be installed at the front or the rear of the rotating disc 230 in the length direction of the workbench 110, and the inner wall and the outer wall of the ring-shaped member 010 can be processed respectively. The rotation of the ring-shaped member 010 is limited and driven by the rotating function portion 200, which has the advantages of simplicity and high efficiency. The processing positions of the upper processing assembly 300 and the middle processing assembly are very close to the rotating disc 230, so that the ring-shaped member 010 can be processed efficiently, and the rotating disc 230 as the supporting basis is more stable.
[0065] The above only describes the preferred embodiments of the utility model, and does not limit the patent range of the utility model, and any equivalent structure or equivalent process conversion according to the contents of the utility model specification and the drawings, or direct or indirect application in other related technical fields, are also included in the patent protection range of the utility model.
Claims
1. A post-processing machine for ring-shaped components with dual working states, characterized in that, include: A support base (100) is horizontally supported by a worktable (110), and a window (111) runs through the middle of the worktable (110) along its length. A rotating function unit (200) is installed on the support base (100) and includes a rotating motor (210) and a clamping member (220). The rotating motor (210) is located below the worktable (110). The output end of the rotating motor (210) is connected to a rotating disk (230) corresponding to the window (111). The clamping member (220) is provided corresponding to the rotating disk (230). The upper processing assembly (300) includes an upper drive stage (310) whose layout direction corresponds to the outer peripheral wall of the rotating disk (230) and is disposed above the worktable (110). The upper drive stage (310) drives an upper processing unit (320) in the width direction of the worktable (110). The middle processing assembly (400) includes a middle drive stage (410) arranged vertically in the window (111), and the middle drive stage (410) drives the middle processing unit (420) in the height direction. A controller (500) controls the operation of the rotary motor (210), the upper processing assembly (300), and the middle processing assembly (400); The extension and retraction directions of the upper processing part (320) and the middle processing part (420) are both directed towards the rotating disk (230). A clamping drive unit (240) is provided corresponding to the clamping member (220). The clamping drive unit (240) is used to drive the clamping member (220) away from and towards the rotating disk (230). The clamping drive unit (240) is located below the worktable (110).
2. The dual-working-state ring member post-processing machine according to claim 1, characterized by, The rotating motor (210) is adjustable in a fixed position along the length of the support base (100).
3. The dual-working-state ring member post-processing machine according to claim 1, characterized by, The clamping drive unit (240) is cylinder driven.
4. The dual-working-state ring member post-processing machine according to claim 1, characterized by, The clamping member (220) includes two rollers spaced apart in the width direction of the worktable (110).
5. The dual-working-state ring member post-processing machine according to any one of claims 1 to 4, characterized by, The upper processing section (320) includes an upper drilling section and an upper tapping section, both of which can move independently in the vertical direction; the middle processing section includes a middle drilling section and a middle tapping section, both of which can move independently in the horizontal direction.
6. The dual-working-state ring member post-processing machine according to any one of claims 1 to 4, characterized by, The upper processing section (320) includes an upper drilling section and an upper tapping section that move together in the vertical direction; the middle processing section includes a middle drilling section and a middle tapping section that move together in the horizontal direction.
7. The double-working-state ring member post-processing machine according to any one of claims 1 to 4, characterized by The intermediate drive stage (410) is located below the worktable (110).
8. The double-working-state ring member post-processing machine according to any one of claims 1 to 4, characterized by, The outer peripheral wall of the rotating disk (230) is a polymer anti-slip layer.
9. The double-working-state ring member post-processing machine according to any one of claims 1 to 4, characterized by, The dual-working-state ring-shaped component post-processing machine also includes a lower processing assembly. The lower processing assembly includes a lower drive stage with its layout direction corresponding to the outer peripheral wall of the rotating disk (230) and located below the worktable (110). The lower drive stage drives the lower processing part to be installed in the width direction of the worktable (110).